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Vidal, J. A.

Publications and source records attributed to Vidal, J. A..

2 recordsLinked to original sources

Enhancer Placement Impacts Transcriptional Dynamics in Drosophila Embryos

The functional role of enhancer-promoter configurations in transcription regulation remains poorly understood, despite the wide range of linear genomic distance and relative enhancer positioning observed in endogenous contexts. While canonical models suggest that enhancers operate independently of genomic position, technical limitations have obscured insights on transcriptional kinetics. Here, we employ single-cell MS2/MCP-based live imaging in Drosophila embryos to systematically analyze transcriptional dynamics driven by sub-10kb enhancer-promoter arrangements. Kinetic analyses reveal that while linear enhancer-promoter distance moderately tunes transcriptional output, downstream enhancer positioning reduces mRNA output by 70%. Each configuration modulates distinct transcriptional parameters: linear distance governs initiation kinetics, while relative enhancer positioning dictates transcriptional stability. These effects are consistent across varied enhancer and reporter sequences, revealing configuration-dependent cis-regulatory element arrangement as an intrinsic mechanism for transcriptional fine-tuning. This work challenges the paradigm of configuration-independent enhancer function and establishes a framework to dissect the interplay between genome architecture and trans-acting factors.

molecular biology↗

Cytological and preliminary genomic analysis of two Leptodactylus frog species (Anura, Leptodactylidae) with recently evolved large meiotic rings of multiple X and Y sex chromosomes

A few species have evolved multiple sex chromosome systems with more than two Xs or Ys. These involve sex chromosome-autosome translocations (sometimes called fusions as very small heterochromatic arms may be deleted), creating neo-sex chromosome systems. Among vertebrates, frogs (Anura) have the highest known number of such translocation systems. This study within the genus Leptodactylus, investigated the two species L. pentadactylus (LPE) and L. paraensis (LPA), in which large ring multivalents are seen in male meiosis, indicating translocations involving the sex chromosomes. Four other species studied do not have such rings, but they share characteristics making rearrangements less likely to be eliminated. To start understanding the formation of multivalents, we used genomic and cytogenetic methods to investigate repetitive DNA sequences, including satellite DNAs, rDNAs, and telomeric sequences, and conducted comparative genomic hybridization (CGH). The LPE genome includes a large number of satDNA families, and in situ mapping of several satDNAs individually identified eight of the ten chromosomes in its multivalent. In LPA, morphological similarities indicate that several chromosomes are shared by the multivalents of both species, and a candidate ancestral sex chromosome pair could be identified. In situ mapping in LPE suggests recent satDNA accumulation in the subtelomeric regions, which differ from those in the outgroup species, contrary to the expectation that the translocations create sex-linkage in the pericentromeric regions.

evolutionary biology↗